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首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >A host deficiency of discoidin domain receptor 2 (DDR2) inhibits both tumour angiogenesis and metastasis
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A host deficiency of discoidin domain receptor 2 (DDR2) inhibits both tumour angiogenesis and metastasis

机译:盘状蛋白结构域受体2(DDR2)的宿主缺陷抑制肿瘤血管生成和转移。

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摘要

Discoidin domain receptor 2 (DDR2) is a unique receptor tyrosine kinase (RTK) that signals in response to collagen binding and is implicated in tumour malignant phenotypes such as invasion and metastasis. Although it has been reported that DDR2 expression is up-regulated in activated endothelial cells (ECs), functional studies are lacking. Herein, we found that enforced expression of DDR2 promoted proliferation, migration and tube formation of primary human umbilical vein endothelial cells (HUVECs). The results of immunohistochemical analysis showed a strikingly high level of DDR2 in human tumour ECs. Most significantly, we discovered that a host deficiency of DDR2 inhibits subcutaneous angiogenesis induced by either VEGF or tumour cells. In addition, the remaining tumour vessels in DDR2-deficient mice exhibit some normalized properties. These vascular phenotypes are accompanied by the up-regulation of anti-angiogenic genes and down-regulation of pro-angiogenic genes, as well as by alleviated tumour hypoxia. By use of a tail vein metastasis model of melanoma, we uncovered that loss of stromal DDR2 also suppresses tumour metastasis to the lung. Hence, our current data disclose a new mechanism by which DDR2 affects tumour progression, and may strengthen the feasibility of targeting DDR2 as an anticancer strategy.
机译:Discoidin域受体2(DDR2)是一种独特的受体酪氨酸激酶(RTK),可响应胶原蛋白结合发出信号,并与肿瘤恶性表型(如侵袭和转移)有关。尽管有报道说DDR2在激活的内皮细胞(EC)中表达上调,但仍缺乏功能研究。在本文中,我们发现DDR2的强制表达促进原代人脐静脉内皮细胞(HUVEC)的增殖,迁移和管形成。免疫组化分析的结果显示,人类肿瘤EC中的DDR2水平非常高。最重要的是,我们发现DDR2宿主缺陷会抑制VEGF或肿瘤细胞诱导的皮下血管生成。此外,DDR2缺陷小鼠中的其余肿瘤血管还表现出一些标准化的特性。这些血管表型伴随​​着抗血管生成基因的上调和前血管生成基因的下调,以及减轻的肿瘤缺氧。通过使用黑色素瘤的尾静脉转移模型,我们发现基质DDR2的丢失也抑制了向肺的肿瘤转移。因此,我们目前的数据揭示了DDR2影响肿瘤进展的新机制,并可能加强将DDR2靶向作为抗癌策略的可行性。

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